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Propagation properties of off-axis Hermite--cosh--Gaussian beam combinations through a first-order optical system
Propagation properties of off-axis Hermite-cosh-Gaussian beam combinations through a first-order optical system

Keywords: laser technology,beam propagation,beam combination,HChG
激光技术
,光束传播,光束组合,HChG

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Abstract:

Based on the Collins integral formula, the analytic expressions of propagation of the coherent and the incoherent off-axis Hermite--cosh--Gaussian (HChG) beam combinations with rectangular symmetry passing through a paraxial first-order optical system are derived, and corresponding numerical examples are given and analysed. The resulting beam quality is discussed in terms of power in the bucket (PIB). The study suggests that the resulting beam cannot keep the initial intensity shape during the propagation and the beam quality for coherent mode is not always better than that for incoherent mode. Reviewing the numerical simulations of Gaussian, Hermite--Gaussian (HG) and cosh--Gaussian (ChG) beam combinations indicates that the Hermite polynomial exerts a chief influence on the irradiance profile of composite beam and far field power concentration.

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